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The initial attachment of a membrane or protein to a target membrane. Docking requires only that the proteins come close enough to interact and adhere. The initial attachment of a synaptic vesicle membrane to the presynaptic membrane, mediated by proteins protruding from the membrane of the synaptic vesicle and the target membrane. The aggregation, arrangement and bonding together of various polypeptides into the exocyst complex. The directed movement of substances into, out of or within a cell by a cellular process that begins with the formation of membrane-bounded vesicles in which the transported substances are enclosed or located in the vesicle membrane. Vesicles are then targeted to, and fuse with, an acceptor membrane. A process of secretion by a cell that results in the release of intracellular molecules (e.g. hormones, matrix proteins) contained within a membrane-bounded vesicle by fusion of the vesicle with the plasma membrane of a cell. This is the process whereby most molecules are secreted from eukaryotic cells. The controlled release of a substance by a cell. The initial attachment of a transport vesicle membrane to the target membrane, mediated by proteins protruding from the membrane of the vesicle and the target membrane. Docking requires only that the two membranes come close enough for these proteins to interact and adhere. The initial attachment of a vesicle membrane to a target membrane, mediated by proteins protruding from the membrane of the vesicle and the target membrane, during exocytosis.

View Gene Ontology (GO) Term

GO TERM SUMMARY

Name: vesicle docking during exocytosis
Acc: GO:0006904
Aspect: Biological Process
Desc: The initial attachment of a vesicle membrane to a target membrane, mediated by proteins protruding from the membrane of the vesicle and the target membrane, during exocytosis.
Proteins in PDR annotated with:
   This term: 111 [Search]
   Term or descendants: 152 [Search]


[geneontology.org]
INTERACTIVE GO GRAPH

GO:0006904 - vesicle docking during exocytosis (interactive image map)

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Created and Maintained by: Michael Riffle